Electron emission from the boundary is ubiquitous in a capacitively coupled plasma (CCP) and precipitates nonnegligible influence on the discharge properties. Here, we present Particle-in-Cell/Monte Carlo Collision simulation of an Ohmic-dominant heating mode of the capacitively coupled plasma, where the stochastic heating vanishes and only Ohmic heating sustains the discharge due to sheath inversion by boundary electron emission. The inverted CCP features negative sheath potential without Bohm presheath, hence excluding plasma heating due to sheath edge oscillation. The particle and energy transport of the proposed heating mode is analyzed. The influence of boundary electron emission flux, source voltage, and neutral pressure on the transi...
There is an evidence of wave emission with a frequency near the electron plasma frequency i.e ωpe at...
In atmospheric-pressure plasmas the main electron heating mechanism is Ohmic heating, which has dist...
Abstract Electron dynamics in a strongly asymmetric capacitively coupled radio-frequency (RF) discha...
Electron emission from the boundary is ubiquitous in capacitively coupled plasma (CCP) and precipita...
International audienceWe revisit the problem of electron heating in capacitively coupled plasmas (CC...
Heating mechanisms and particle flow balancing of capacitively coupled plasmas driven by combined dc...
The research presented here focuses on the study of phenomena associated with the sheaths present in...
International audiencePreviously plasma non-uniformities in Capacitively Coupled Plasmas were though...
International audienceBy performing a combination of test-particle and particle-in-cell simulations,...
The authors consider electron heating in the sheath regions of capacitive discharges excited by a co...
Abstract We investigate the electron heating dynamics in electropositive argon and helium capacitive...
We investigate the electron heating dynamics in electropositive argon and helium capacitively couple...
We discuss electron heating mechanisms in the sheath regions of dual-frequency capacitive discharges...
There is an evidence of wave emission with a frequency near the electron plasma frequency i.e ωpe at...
In atmospheric-pressure plasmas the main electron heating mechanism is Ohmic heating, which has dist...
Abstract Electron dynamics in a strongly asymmetric capacitively coupled radio-frequency (RF) discha...
Electron emission from the boundary is ubiquitous in capacitively coupled plasma (CCP) and precipita...
International audienceWe revisit the problem of electron heating in capacitively coupled plasmas (CC...
Heating mechanisms and particle flow balancing of capacitively coupled plasmas driven by combined dc...
The research presented here focuses on the study of phenomena associated with the sheaths present in...
International audiencePreviously plasma non-uniformities in Capacitively Coupled Plasmas were though...
International audienceBy performing a combination of test-particle and particle-in-cell simulations,...
The authors consider electron heating in the sheath regions of capacitive discharges excited by a co...
Abstract We investigate the electron heating dynamics in electropositive argon and helium capacitive...
We investigate the electron heating dynamics in electropositive argon and helium capacitively couple...
We discuss electron heating mechanisms in the sheath regions of dual-frequency capacitive discharges...
There is an evidence of wave emission with a frequency near the electron plasma frequency i.e ωpe at...
In atmospheric-pressure plasmas the main electron heating mechanism is Ohmic heating, which has dist...
Abstract Electron dynamics in a strongly asymmetric capacitively coupled radio-frequency (RF) discha...